Key Laboratory of Soil Environment & Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China; University of Chinese Academy of Sciences, Beijing 100049, China.
The University of Queensland, School of Agriculture and Food Sciences, St. Lucia, Queensland 4072, Australia.
Chemosphere. 2014 Oct;112:232-9. doi: 10.1016/j.chemosphere.2014.04.079. Epub 2014 May 14.
Toxicity assessment of Zn-Co mixtures involves multiple ions interactions. The negative potential (ψ0) at the cell membrane surface (CMs) concentrated cationic toxicants (denoted {M(2+)}0) and influenced the rhizotoxicity of Co(2+) or Zn(2+). The single and joint rhizotoxicity of Co(2+) and Zn(2+) to wheat (Triticum aestivum L.) were examined, coupled with different Ca(2+) levels. Joint effects of Zn(2+), Co(2+) and Ca(2+) were estimated by the linearly extended concentration addition (CA) and response addition (RA) models. Incorporation of Ca(2+) in single metal toxicity assessment significantly enhanced the prediction accuracy (r(2) increased from 0.948 to 0.550 for Zn(2+) and from 0.903 to 0.611 for Co(2+), respectively). ψ0 affected the multiple metals toxicity in both conventional mixture models (r(2)=0.814 for CA model and 0.820 for RA model). Concretely, {Zn(2+)}0 alleviated the toxicity of {Co(2+)}0, while {Co(2+)}0 had non-significant effect on {Zn(2+)}0 toxicity. Growth responses to {Ca(2+)}0 were substantially affected by {Zn(2+)}0 and {Co(2+)}0. Ca addition in medium decreased the {M(2+)}0 by reducing the ψ0 negativity, moreover this addition alleviated Ca deficiency at CMs induced by Zn(2+) (or Co(2+)). These consistent results from both extended CA and RA models indicated that ψ0 provided a novel sight for understanding the rhizotoxicity of multiple metals.
锌-钴混合物的毒性评估涉及多种离子相互作用。细胞膜表面(CMs)的负电势(ψ0)集中了阳离子毒性物质(表示为{M(2+)}0),并影响了 Co(2+)或 Zn(2+)的根毒性。本文研究了 Co(2+)和 Zn(2+)对小麦(Triticum aestivum L.)的单一和联合根毒性,同时还考虑了不同的 Ca(2+)水平。通过线性扩展浓度加和(CA)和响应加和(RA)模型,评估了 Zn(2+)、Co(2+)和 Ca(2+)的联合效应。在单一金属毒性评估中加入 Ca(2+)显著提高了预测准确性(对于 Zn(2+),r(2)从 0.948 增加到 0.550,对于 Co(2+),r(2)从 0.903 增加到 0.611)。ψ0 影响了常规混合物模型中多种金属的毒性(CA 模型的 r(2)为 0.814,RA 模型的 r(2)为 0.820)。具体来说,{Zn(2+)}0减轻了{Co(2+)}0的毒性,而{Co(2+)}0对{Zn(2+)}0毒性没有显著影响。{Ca(2+)}0对生长的响应受到{Zn(2+)}0和{Co(2+)}0的显著影响。培养基中添加 Ca 降低了 M(2+)0,减少了 ψ0 的负电性,此外,这一添加减轻了 Zn(2+)(或 Co(2+))引起的 CMs 中 Ca 缺乏。扩展 CA 和 RA 模型的这些一致结果表明,ψ0为理解多种金属的根毒性提供了新的视角。